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A Novel Sterol Regulatory Element-Binding Protein Gene (sreA) Identified in Penicillium digitatum Is Required for Prochloraz Resistance, Full Virulence and erg11 (cyp51) Regulation
by
Xiong, Li
, Liu, Jing
, Liu, Deli
, Chen, Yuanlei
, Wu, Zhi
, Li, Na
, Yuan, Yongze
, Geng, Hui
, Qin, Tingting
in
Amino Acid Sequence
/ Analysis
/ Antifungal agents
/ Biology
/ Candida albicans
/ Chemical properties
/ Citrus
/ Citrus - microbiology
/ Complementation
/ Cytochrome P-450
/ Decay
/ Deoxyribonucleic acid
/ Disease control
/ DNA
/ Drug resistance
/ Drug Resistance, Fungal
/ Fruits
/ Fungal Proteins - genetics
/ Fungal Proteins - metabolism
/ Fungi
/ Fungicides
/ Fungicides, Industrial - pharmacology
/ Gene Expression Regulation, Fungal - drug effects
/ Genes
/ Genes, Fungal
/ Genetic transformation
/ Genomes
/ Genomics
/ Helix-loop-helix
/ Helix-loop-helix proteins
/ Hypoxia
/ Imidazoles - pharmacology
/ Laboratories
/ Leucine
/ Leucine zipper proteins
/ Life sciences
/ Molecular Sequence Data
/ Mutation
/ Penicillium - drug effects
/ Penicillium - enzymology
/ Penicillium - genetics
/ Penicillium - pathogenicity
/ Penicillium digitatum
/ Pesticides
/ Plant Diseases - microbiology
/ Prochloraz
/ Protein binding
/ Proteins
/ Sequence Analysis, DNA
/ Steroids (Organic compounds)
/ Sterol 14-Demethylase - genetics
/ Sterol 14-Demethylase - metabolism
/ Sterol Regulatory Element Binding Proteins - genetics
/ Sterol Regulatory Element Binding Proteins - metabolism
/ Sterol regulatory element-binding protein
/ Sterols
/ Transcription factors
/ Transcription, Genetic - drug effects
/ Transformation
/ Triazoles
/ Virulence
/ Virulence (Microbiology)
/ Yeast
2015
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A Novel Sterol Regulatory Element-Binding Protein Gene (sreA) Identified in Penicillium digitatum Is Required for Prochloraz Resistance, Full Virulence and erg11 (cyp51) Regulation
by
Xiong, Li
, Liu, Jing
, Liu, Deli
, Chen, Yuanlei
, Wu, Zhi
, Li, Na
, Yuan, Yongze
, Geng, Hui
, Qin, Tingting
in
Amino Acid Sequence
/ Analysis
/ Antifungal agents
/ Biology
/ Candida albicans
/ Chemical properties
/ Citrus
/ Citrus - microbiology
/ Complementation
/ Cytochrome P-450
/ Decay
/ Deoxyribonucleic acid
/ Disease control
/ DNA
/ Drug resistance
/ Drug Resistance, Fungal
/ Fruits
/ Fungal Proteins - genetics
/ Fungal Proteins - metabolism
/ Fungi
/ Fungicides
/ Fungicides, Industrial - pharmacology
/ Gene Expression Regulation, Fungal - drug effects
/ Genes
/ Genes, Fungal
/ Genetic transformation
/ Genomes
/ Genomics
/ Helix-loop-helix
/ Helix-loop-helix proteins
/ Hypoxia
/ Imidazoles - pharmacology
/ Laboratories
/ Leucine
/ Leucine zipper proteins
/ Life sciences
/ Molecular Sequence Data
/ Mutation
/ Penicillium - drug effects
/ Penicillium - enzymology
/ Penicillium - genetics
/ Penicillium - pathogenicity
/ Penicillium digitatum
/ Pesticides
/ Plant Diseases - microbiology
/ Prochloraz
/ Protein binding
/ Proteins
/ Sequence Analysis, DNA
/ Steroids (Organic compounds)
/ Sterol 14-Demethylase - genetics
/ Sterol 14-Demethylase - metabolism
/ Sterol Regulatory Element Binding Proteins - genetics
/ Sterol Regulatory Element Binding Proteins - metabolism
/ Sterol regulatory element-binding protein
/ Sterols
/ Transcription factors
/ Transcription, Genetic - drug effects
/ Transformation
/ Triazoles
/ Virulence
/ Virulence (Microbiology)
/ Yeast
2015
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A Novel Sterol Regulatory Element-Binding Protein Gene (sreA) Identified in Penicillium digitatum Is Required for Prochloraz Resistance, Full Virulence and erg11 (cyp51) Regulation
by
Xiong, Li
, Liu, Jing
, Liu, Deli
, Chen, Yuanlei
, Wu, Zhi
, Li, Na
, Yuan, Yongze
, Geng, Hui
, Qin, Tingting
in
Amino Acid Sequence
/ Analysis
/ Antifungal agents
/ Biology
/ Candida albicans
/ Chemical properties
/ Citrus
/ Citrus - microbiology
/ Complementation
/ Cytochrome P-450
/ Decay
/ Deoxyribonucleic acid
/ Disease control
/ DNA
/ Drug resistance
/ Drug Resistance, Fungal
/ Fruits
/ Fungal Proteins - genetics
/ Fungal Proteins - metabolism
/ Fungi
/ Fungicides
/ Fungicides, Industrial - pharmacology
/ Gene Expression Regulation, Fungal - drug effects
/ Genes
/ Genes, Fungal
/ Genetic transformation
/ Genomes
/ Genomics
/ Helix-loop-helix
/ Helix-loop-helix proteins
/ Hypoxia
/ Imidazoles - pharmacology
/ Laboratories
/ Leucine
/ Leucine zipper proteins
/ Life sciences
/ Molecular Sequence Data
/ Mutation
/ Penicillium - drug effects
/ Penicillium - enzymology
/ Penicillium - genetics
/ Penicillium - pathogenicity
/ Penicillium digitatum
/ Pesticides
/ Plant Diseases - microbiology
/ Prochloraz
/ Protein binding
/ Proteins
/ Sequence Analysis, DNA
/ Steroids (Organic compounds)
/ Sterol 14-Demethylase - genetics
/ Sterol 14-Demethylase - metabolism
/ Sterol Regulatory Element Binding Proteins - genetics
/ Sterol Regulatory Element Binding Proteins - metabolism
/ Sterol regulatory element-binding protein
/ Sterols
/ Transcription factors
/ Transcription, Genetic - drug effects
/ Transformation
/ Triazoles
/ Virulence
/ Virulence (Microbiology)
/ Yeast
2015
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A Novel Sterol Regulatory Element-Binding Protein Gene (sreA) Identified in Penicillium digitatum Is Required for Prochloraz Resistance, Full Virulence and erg11 (cyp51) Regulation
Journal Article
A Novel Sterol Regulatory Element-Binding Protein Gene (sreA) Identified in Penicillium digitatum Is Required for Prochloraz Resistance, Full Virulence and erg11 (cyp51) Regulation
2015
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Overview
Penicillium digitatum is the most destructive postharvest pathogen of citrus fruits, causing fruit decay and economic loss. Additionally, control of the disease is further complicated by the emergence of drug-resistant strains due to the extensive use of triazole antifungal drugs. In this work, an orthologus gene encoding a putative sterol regulatory element-binding protein (SREBP) was identified in the genome of P. digitatum and named sreA. The putative SreA protein contains a conserved domain of unknown function (DUF2014) at its carboxyl terminus and a helix-loop-helix (HLH) leucine zipper DNA binding domain at its amino terminus, domains that are functionally associated with SREBP transcription factors. The deletion of sreA (ΔsreA) in a prochloraz-resistant strain (PdHS-F6) by Agrobacterium tumefaciens-mediated transformation led to increased susceptibility to prochloraz and a significantly lower EC50 value compared with the HS-F6 wild-type or complementation strain (COsreA). A virulence assay showed that the ΔsreA strain was defective in virulence towards citrus fruits, while the complementation of sreA could restore the virulence to a large extent. Further analysis by quantitative real-time PCR demonstrated that prochloraz-induced expression of cyp51A and cyp51B in PdHS-F6 was completely abolished in the ΔsreA strain. These results demonstrate that sreA is a critical transcription factor gene required for prochloraz resistance and full virulence in P. digitatum and is involved in the regulation of cyp51 expression.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Analysis
/ Biology
/ Citrus
/ Decay
/ DNA
/ Fruits
/ Fungal Proteins - metabolism
/ Fungi
/ Fungicides, Industrial - pharmacology
/ Gene Expression Regulation, Fungal - drug effects
/ Genes
/ Genomes
/ Genomics
/ Hypoxia
/ Leucine
/ Mutation
/ Plant Diseases - microbiology
/ Proteins
/ Steroids (Organic compounds)
/ Sterol 14-Demethylase - genetics
/ Sterol 14-Demethylase - metabolism
/ Sterol Regulatory Element Binding Proteins - genetics
/ Sterol Regulatory Element Binding Proteins - metabolism
/ Sterol regulatory element-binding protein
/ Sterols
/ Transcription, Genetic - drug effects
/ Yeast
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